assembleDebug, testDebugUnitTest, and recordPaparazziDebug all pass. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_016bThmkmyUUdqQpy3MXFFe5
157 lines
5.9 KiB
Markdown
157 lines
5.9 KiB
Markdown
# Deploying Bookshelf's PocketBase server
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This assumes a spare always-on machine at home (a mini PC, NUC, Raspberry Pi,
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or an old laptop) running Linux. Pick **one** of the two run methods below —
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systemd or Docker — not both.
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## 0. Get the files onto the server
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Copy the whole `server/` directory (minus `.dev-credentials`, which is
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gitignored and dev-only) to the target machine, e.g.:
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```sh
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rsync -av --exclude .dev-credentials ~/bookshelf/server/ youruser@homeserver:/opt/bookshelf/
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```
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The `pocketbase` binary is architecture-specific — if your home server isn't
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the same CPU architecture as wherever you built/downloaded it, grab the
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matching build from https://github.com/pocketbase/pocketbase/releases
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(this project is pinned to **v0.40.2**) and drop it in as `/opt/bookshelf/pocketbase`.
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## 1. Run it — Option A: systemd (recommended for a bare-metal/VM host)
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1. Create a dedicated unprivileged user:
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```sh
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sudo useradd --system --home /opt/bookshelf --shell /usr/sbin/nologin bookshelf
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sudo chown -R bookshelf:bookshelf /opt/bookshelf
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```
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2. Install the unit:
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```sh
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sudo cp deploy/bookshelf.service /etc/systemd/system/
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sudo systemctl daemon-reload
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sudo systemctl enable --now bookshelf
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```
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3. Check it's up: `systemctl status bookshelf` and `curl http://127.0.0.1:8090/api/health`.
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4. Logs: `journalctl -u bookshelf -f`.
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Note the unit binds PocketBase to `127.0.0.1:8090` only — it is **not**
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reachable from other machines yet. That's intentional; see step 4.
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## 2. Run it — Option B: Docker
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```sh
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cd deploy
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docker compose up -d --build
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docker compose logs -f
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```
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This also only publishes to `127.0.0.1:8090` on the host, for the same
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reason. Data persists in the `bookshelf_pb_data` named volume regardless of
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container restarts/rebuilds.
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## 3. Provision the schema and accounts
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Once the server is up and answering on `127.0.0.1:8090`, run the setup
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scripts from `server/` (one directory up from here):
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```sh
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cd /opt/bookshelf
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# If this is a brand-new PocketBase data dir, it prints a one-time setup URL
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# on first launch (see `journalctl -u bookshelf` or `docker compose logs`) —
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# open that in a browser first to create your superuser account.
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./setup-schema.sh http://127.0.0.1:8090 <superuser-email> <superuser-password>
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# Then create the household accounts — there is no public sign-up:
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./create-user.sh owner@example.com "a strong password" "Owner Name"
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./create-user.sh spouse@example.com "a different strong password" "Spouse Name"
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```
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`setup-schema.sh` is idempotent — safe to re-run any time (e.g. after
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pulling an updated `server/` if the schema ever changes).
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## 4. Reach it from outside your home network
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The app needs a URL it can hit from anywhere your phone goes — not just your
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home wifi. Two real options:
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### Tailscale (recommended)
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Install Tailscale on the home server and on your phone, join both to the
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same tailnet. The server gets a stable `100.x.y.z` address (or a
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MagicDNS name like `homeserver.your-tailnet.ts.net`) reachable from
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anywhere, encrypted end-to-end, with **no ports opened on your router**.
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- **Pros:** essentially zero attack surface (nothing is exposed to the
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public internet at all — not even a login page), no TLS cert management,
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works behind CGNAT, five-minute setup.
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- **Cons:** both devices need the Tailscale app installed and signed in;
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if Tailscale's coordination service has an outage, *new* connections may
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be briefly unable to establish (existing ones keep working) — acceptable
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for a two-person home library, not for something needing five-nines.
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- Point the app's server-URL field at `http://100.x.y.z:8090` (Tailscale's
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encryption makes plain HTTP tolerable *inside the tailnet*, but see the
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HTTPS note below — using `https://` via Tailscale Serve, next, is easy
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enough to just do).
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- Even better: use [`tailscale serve`](https://tailscale.com/kb/1312/serve)
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to get automatic HTTPS with a real cert on your tailnet domain, so the
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app can just always use `https://`:
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```sh
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sudo tailscale serve --bg 8090
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```
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### Port-forward + Caddy (reverse proxy with TLS)
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Forward a port on your router to the home server, and run
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[Caddy](https://caddyserver.com/) in front of PocketBase to terminate TLS
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with an automatic Let's Encrypt certificate.
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- **Pros:** works with any client, no extra app/agent needed on the phone,
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a real public HTTPS URL.
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- **Cons:** you're now running an internet-facing service from your home —
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bugs in PocketBase, Caddy, or your router's firmware are now a real
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attack surface; you need a domain name (or dynamic-DNS if your ISP gives
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you a changing IP) for Let's Encrypt's HTTP-01/TLS-ALPN-01 challenge to
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work; residential ISPs sometimes block inbound 80/443 or use CGNAT,
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which breaks this approach entirely (Tailscale sidesteps that).
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Minimal Caddyfile:
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```
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bookshelf.yourdomain.com {
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reverse_proxy 127.0.0.1:8090
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}
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```
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Caddy handles the certificate automatically. Point your router's port
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forward at the Caddy host's 443, and the app's server-URL field at
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`https://bookshelf.yourdomain.com`.
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### HTTPS is not optional
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The app sends the account password on every login. **Never** point the app
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at a plain `http://` URL that crosses the public internet or an untrusted
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network — only plain HTTP over Tailscale (which is already
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end-to-end-encrypted at the network layer) is acceptable, and even there,
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prefer `tailscale serve` for a real cert. If you go the port-forward route,
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Caddy above gets you HTTPS for free — don't skip it.
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## 5. Back up regularly
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```sh
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./deploy/backup.sh
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```
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See the comments at the top of `backup.sh` for what it does (SQLite-safe
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snapshot + uploaded covers, tarball, prune old ones) and the restore
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procedure. Wire it into cron:
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```sh
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crontab -e
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# add:
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0 3 * * * /opt/bookshelf/deploy/backup.sh >> /var/log/bookshelf-backup.log 2>&1
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```
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Consider also copying the resulting tarballs off-box (another machine, a
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USB drive, cloud storage) — a backup that lives on the same disk as the
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data it's backing up doesn't protect against disk failure.
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